Oxygen supply humidification system
Abstract
An oxygen therapy humidification device is disclosed. The humidification device includes a hollow water reservoir that includes an upper end that has an upper cross-sectional area and a lower end that has a lower cross-sectional area. The lower cross-sectional area is smaller than the upper cross-sectional area. The device also includes an oxygen inlet and an oxygen outlet, both of which are positioned at the upper end of the hollow water reservoir and provide fluid communication to and from the hollow water reservoir. The oxygen inlet includes a bypass valve that is connected to a duct that extends from the oxygen inlet to a diffuser that is positioned at the lower end of the hollow water reservoir. The bypass valve allows the user to control the proportion of water vapor or humidity delivered to oxygen that is passed through the device, with the oxygen entering through the inlet and leaving through the outlet at the desired humidity level.
Claims
exact text as granted — not AI-modified1. An oxygen therapy humidification device for humidifying gas delivered to a patient, the device comprising:
a hollow water reservoir;
an oxygen inlet and an oxygen outlet positioned at the upper end of the hollow water reservoir and providing fluid communication into the hollow water reservoir, the oxygen inlet having a bypass valve that is connected to a duct that extends from the oxygen inlet to a diffuser that is positioned at the lower end of the hollow water reservoir, the bypass valve being a needle type valve that is axially adjustable to allow the user to control humidification by controlling the proportion of oxygen delivered through the bypass valve to the duct and to the diffuser or into the hollow reservoir where it is allowed to remix with oxygen that was delivered to the diffuser, so that the remixed oxygen is then allowed to escape the hollow reservoir through the oxygen outlet.
2. An oxygen therapy humidification device for exposing oxygen to water in a liquid state while the oxygen is being delivered to a patient, the device comprising:
a hollow water reservoir;
a cap that is adapted for attachment to the hollow water reservoir, the cap including an oxygen inlet and an oxygen outlet for providing fluid communication into the hollow water reservoir, the oxygen inlet having a bypass valve that is connected to a duct that extends from the oxygen inlet to a diffuser that is positioned at the lower end of the hollow water reservoir, the bypass valve comprising a needle valve that includes threads that allow axial movement of a needle that adjustably extends into the inlet duct to allow the user to control humidification by controlling the proportion of oxygen delivered to the bypass valve and then delivered to the duct and to the diffuser or into the hollow reservoir where it is allowed to remix with oxygen that was delivered to the diffuser, so that the remixed oxygen is then allowed to escape the hollow reservoir through the oxygen outlet.
3. An oxygen therapy device according to claim 2 wherein said cap further comprises at least one belt loop, and the device further comprising an adjustable strap that is adapted for extending through the belt loop and allowing the support of the device from a support surface.
4. An oxygen therapy oxygen humidification device to be carried by a patient during use, the device comprising:
a hollow water reservoir that includes and an interior and a mouth that provides access to the interior;
a cap that is adapted for sealingly engaging the mouth of the hollow water reservoir, the cap having an oxygen inlet and an oxygen outlet that provide fluid communication into the hollow water reservoir, the oxygen inlet having a bypass valve that is connected to a duct that extends from the oxygen inlet to a diffuser that is positioned at the lower end of the hollow water reservoir, the bypass valve comprising a needle valve that uses a needle that adjustably extends into the inlet duct to allow the user to control the humidification of prescribed oxygen by controlling the proportion of the prescribed oxygen delivered to the bypass valve and then delivered to the duct and to the diffuser or into the hollow reservoir where it is allowed to remix with oxygen that was delivered to the diffuser, so that the remixed oxygen is then allowed to escape the hollow reservoir through the oxygen outlet.Join the waitlist — get patent alerts
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